日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

SOS1 tonoplast neo-localization and the RGG protein SALTY are important in the extreme salinity tolerance of Salicornia bigelovii

SOS1 液泡膜新定位和 RGG 蛋白 SALTY 对 Salicornia bigelovii 的极端盐度耐受性至关重要

Octavio R Salazar, Ke Chen, Vanessa J Melino, Muppala P Reddy, Eva Hřibová, Jana Čížková, Denisa Beránková, Juan Pablo Arciniegas Vega, Lina María Cáceres Leal, Manuel Aranda, Lukasz Jaremko, Mariusz Jaremko, Nina V Fedoroff, Mark Tester, Sandra M Schmöckel

AtCIPK16, a CBL-interacting protein kinase gene, confers salinity tolerance in transgenic wheat

CBL 互作蛋白激酶基因 AtCIPK16 赋予转基因小麦耐盐性

Khadija Imtiaz, Moddassir Ahmed, Nazish Annum, Mark Tester, Nasir A Saeed

The diversity of quinoa morphological traits and seed metabolic composition

藜麦形态性状和种子代谢组成的多样性

Iman Tabatabaei, Saleh Alseekh, Mohammad Shahid, Ewa Leniak, Mateusz Wagner, Henda Mahmoudi, Sumitha Thushar, Alisdair R Fernie, Kevin M Murphy, Sandra M Schmöckel, Mark Tester, Bernd Mueller-Roeber, Aleksandra Skirycz, Salma Balazadeh2

The role of PQL genes in response to salinity tolerance in Arabidopsis and barley

PQL 基因在拟南芥和大麦耐盐性反应中的作用

Mashael Alqahtani, Damien J Lightfoot, Fouad Lemtiri-Chlieh, Ebtihaj Bukhari, José M Pardo, Magdalena M Julkowska, Mark Tester

The Arabidopsis thaliana K+-Uptake Permease 5 (AtKUP5) Contains a Functional Cytosolic Adenylate Cyclase Essential for K+ Transport

拟南芥 K+ 吸收通透酶 5 (AtKUP5) 含有功能性胞浆腺苷酸环化酶,对 K+ 运输至关重要

Inas Al-Younis, Aloysius Wong, Fouad Lemtiri-Chlieh, Sandra Schmöckel, Mark Tester, Chris Gehring, Lara Donaldson

The Genome Sequence of the Wild Tomato Solanum pimpinellifolium Provides Insights Into Salinity Tolerance

野生番茄 Solanum pimpinellifolium 的基因组序列为耐盐性提供了见解

Rozaimi Razali, Salim Bougouffa, Mitchell J L Morton, Damien J Lightfoot, Intikhab Alam, Magbubah Essack, Stefan T Arold, Allan A Kamau, Sandra M Schmöckel, Yveline Pailles, Mohammed Shahid, Craig T Michell, Salim Al-Babili, Yung Shwen Ho, Mark Tester, Vladimir B Bajic, Sónia Negrão

Comparison of Leaf Sheath Transcriptome Profiles with Physiological Traits of Bread Wheat Cultivars under Salinity Stress

盐胁迫下面包小麦品种叶鞘转录组谱与生理性状的比较

Fuminori Takahashi,Joanne Tilbrook,Christine Trittermann,Bettina Berger,Stuart J Roy,Motoaki Seki,Kazuo Shinozaki,Mark Tester

Shoot Na+ exclusion and increased salinity tolerance engineered by cell type-specific alteration of Na+ transport in Arabidopsis

通过改变拟南芥细胞类型特异性的 Na+ 转运来实现茎部 Na+ 排除和耐盐性提高

Inge S Møller, Matthew Gilliham, Deepa Jha, Gwenda M Mayo, Stuart J Roy, Juliet C Coates, Jim Haseloff, Mark Tester